Characterization and applications of evoked responses during epidural electrical stimulation

Author:

Verma Nishant,Romanauski Ben,Lam Danny,Lujan Luis,Blanz Stephan,Ludwig Kip,Lempka Scott,Shoffstall Andrew,Knudson Bruce,Nishiyama Yuichiro,Hao Jian,Park Hyun-Joo,Ross Erika,Lavrov IgorORCID,Zhang Mingming

Abstract

Abstract Background Epidural electrical stimulation (EES) of the spinal cord has been FDA approved and used therapeutically for decades. However, there is still not a clear understanding of the local neural substrates and consequently the mechanism of action responsible for the therapeutic effects. Method Epidural spinal recordings (ESR) are collected from the electrodes placed in the epidural space. ESR contains multi-modality signal components such as the evoked neural response (due to tonic or BurstDR™ waveforms), evoked muscle response, stimulation artifact, and cardiac response. The tonic stimulation evoked compound action potential (ECAP) is one of the components in ESR and has been proposed recently to measure the accumulative local potentials from large populations of neuronal fibers during EES. Result Here, we first review and investigate the referencing strategies, as they apply to ECAP component in ESR in the domestic swine animal model. We then examine how ECAP component can be used to sense lead migration, an adverse outcome following lead placement that can reduce therapeutic efficacy. Lastly, we show and isolate concurrent activation of local back and leg muscles during EES, demonstrating that the ESR obtained from the recording contacts contain both ECAP and EMG components. Conclusion These findings may further guide the implementation of recording and reference contacts in an implantable EES system and provide preliminary evidence for the utility of ECAP component in ESR to detect lead migration. We expect these results to facilitate future development of EES methodology and implementation of use of different components in ESR to improve EES therapy.

Funder

Abbott Neuromodulation

Abbott Laboratories

Publisher

Springer Science and Business Media LLC

Subject

General Earth and Planetary Sciences,General Environmental Science

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Multiple-Mode Bi-directional Neural Interface Design for Spinal Cord to Muscle Neural Link Mapping Study;2023 IEEE Biomedical Circuits and Systems Conference (BioCAS);2023-10-19

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